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嗜热栖热放线菌羧酸酯酶Est55的晶体结构及其对前药CPT-11的激活作用

Crystal structure of the Geobacillus stearothermophilus carboxylesterase Est55 and its activation of prodrug CPT-11.

作者信息

Liu Ping, Ewis Hosam E, Tai Phang C, Lu Chung-Dar, Weber Irene T

机构信息

Department of Biology, Molecular Basis of Disease Program, Georgia State University, Atlanta, GA 30303, USA.

出版信息

J Mol Biol. 2007 Mar 16;367(1):212-23. doi: 10.1016/j.jmb.2006.12.067. Epub 2006 Dec 30.

Abstract

Several mammalian carboxylesterases were shown to activate the prodrug irinotecan (CPT-11) to produce 7-ethyl-10-hydroxycamptothecin (SN-38), a topoisomerase inhibitor used in cancer therapy. However, the potential use of bacterial carboxylesterases, which have the advantage of high stability, has not been explored. We present the crystal structure of the carboxyesterase Est55 from Geobacillus stearothermophilus and evaluation of its enzyme activity on CPT-11. Crystal structures were determined at pH 6.2 and pH 6.8 and resolution of 2.0 A and 1.58 A, respectively. Est55 folds into three domains, a catalytic domain, an alpha/beta domain and a regulatory domain. The structure is in an inactive form; the side-chain of His409, one of the catalytic triad residues, is directed away from the other catalytic residues Ser194 and Glu310. Moreover, the adjacent Cys408 is triply oxidized and lies in the oxyanion hole, which would block the binding of substrate, suggesting a regulatory role. However, Cys408 is not essential for enzyme activity. Mutation of Cys408 showed that hydrophobic side-chains were favorable, while polar serine was unfavorable for enzyme activity. Est55 was shown to hydrolyze CPT-11 into the active form SN-38. The mutant C408V provided a more stable enzyme for activation of CPT-11. Therefore, engineered thermostable Est55 is a candidate for use with irinotecan in enzyme-prodrug cancer therapy.

摘要

几种哺乳动物羧酸酯酶可将前药伊立替康(CPT-11)激活,生成7-乙基-10-羟基喜树碱(SN-38),这是一种用于癌症治疗的拓扑异构酶抑制剂。然而,具有高稳定性优势的细菌羧酸酯酶的潜在用途尚未得到探索。我们展示了嗜热栖热放线菌羧酸酯酶Est55的晶体结构,并评估了其对CPT-11的酶活性。分别在pH 6.2和pH 6.8条件下测定晶体结构,分辨率分别为2.0 Å和1.58 Å。Est55折叠成三个结构域,一个催化结构域、一个α/β结构域和一个调节结构域。该结构处于无活性形式;催化三联体残基之一His409的侧链远离其他催化残基Ser194和Glu310。此外,相邻的Cys408被三重氧化并位于氧阴离子孔中,这会阻碍底物的结合,表明其具有调节作用。然而,Cys408对酶活性并非必需。Cys408的突变表明疏水性侧链有利于酶活性,而极性丝氨酸则不利于酶活性。Est55被证明可将CPT-11水解为活性形式SN-38。突变体C408V为CPT-11的激活提供了更稳定的酶。因此,工程改造的热稳定Est55是在酶促前药癌症治疗中与伊立替康联用的候选物。

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